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Number of results
2010 | 117 | 5 | 873-877

Article title

Preparation of Carbon-Copper-Silicon Nanocomposite Materials and Coatings Owing to Abrasive-Reactive Wear

Content

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EN

Abstracts

EN
We will focus on the important aspect of mechanical activation by grinding in a mill, namely, nanoscale wear of the treated substances and of the milling tools. A new technology called abrasive-reactive wear has been developed that utilizes wear debris as an integral component of the reaction system rather than treating it as a harmful impurity. This technology is applied to the processing of low-grade diamond and silicon by cupric milling tools. Abnormal influence of graphite on abrasive wear degree is established.

Keywords

Contributors

author
  • Institute of Geology and Mineralogy SB RAS, Novosibirsk, Russia
author
  • Institute of High Technologies NAC "Kazatomprom", Almaty, Kazakhstan
author
  • Institute of Geology and Mineralogy SB RAS, Novosibirsk, Russia
author
  • Kutateladze Institute of Thermophysics SB RAS, Novosibirsk, Russia
author
  • Institute of Geology and Mineralogy SB RAS, Novosibirsk, Russia
author
  • Kutateladze Institute of Thermophysics SB RAS, Novosibirsk, Russia
author
  • Institute of Solid State Chemistry and Mechanochemistry SB RAS, Novosibirsk, Russia
author
  • Institute of Geology and Mineralogy SB RAS, Novosibirsk, Russia

References

  • 1. F.Kh. Urakaev, V.V. Boldyrev, Powder Techn. 107, 93 (2000)
  • 2. F.Kh. Urakaev, V.V. Boldyrev, Powder Techn. 107, 197 (2000)
  • 3. F.Kh. Urakaev, Phys. Chem. Minerals 34, 351 (2007)
  • 4. F.Kh. Urakaev, Phys. Chem. Minerals 35, 231 (2008)
  • 5. C. Suryanarayana, Mechanical Alloying and Milling, Marcel Dekker, New York 2004
  • 6. F.Kh. Urakaev, V.S. Shevchenko, Russian J. Phys. Chem. 80, 157 (2006)
  • 7. F.Kh. Urakaev, Int. J. Mineral Proc. 92, 58 (2009)
  • 8. J.Z. Jiang, R.K. Larsen, R. Lin, S. Mørup, I. Chorkendorff, K. Nielsen, K. Hansen, K. West, J. Solid State Chem. 138, 114 (1998)
  • 9. F.Kh. Urakaev, V.S. Shevchenko, KONA 25, 162 (2007)
  • 10. F.Kh. Urakaev, T.A. Ketegenov, E.I. Petrushin, Yu.P. Savintsev, O.A. Tyumentseva, A.P. Chupakhin, V.S. Shevchenko, T.S. Yusupov, V.V. Boldyrev, J. Mining Sci. 39, 304 (2003)
  • 11. F.Kh. Urakaev, Yu.N. Pal'yanov, V.S. Shevchenko, N.V. Sobolev, Doklady Earth Sci. 395, 214 (2004)
  • 12. F.Kh. Urakaev, V.S. Shevchenko, A.M. Logvinova, I.A. Madyukov, E.I. Petrushin, T.S. Yusupov, N.V. Sobolev, Doklady Earth Sci. 415, 755 (2007)
  • 13. K. Yoshida, H. Morigami, Microelectronics Reliability 44, 303 (2004)
  • 14. T. Tyler, O. Shenderova, G. Cunningham, J. Walsh, J. Drobnik, G. McGuire, Diamond and Related Materials 15, 2078 (2006)
  • 15. S.V. Kidalov, F.M. Shakhov, A.Ya. Vul', Diamond and Related Materials 16, 2063 (2007)
  • 16. K. Raleva, D. Vasileska, S.M. Goodnick, IEEE Electron Device Letters 29, 621 (2008)
  • 17. http://www.advanceddiamond.com/products.html
  • 18. W.Z. Shao, V.V. Ivanov, L. Zhen, Y.S. Cui, Y. Wang, Materials Letters 58, 146 (2003)
  • 19. A.G. Sokol, Yu.N. Pal'yanov, Contributions to Mineralogy and Petrology 155, 33 (2008)
  • 20. O. Boytsov, F. Bernard, E. Gaffet, Y. Champion, A. Ustinov, Chemistry for Sustainable Development 13, 131 (2005)
  • 21. N.F. Uvarov, Russian Chemical Reviews 76, 415 (2007)
  • 22. Á. Révész, L. Takacs, Surface and Coatings Technology. 203, 3026 (2009)

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv117n532kz
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